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GREEN COMPUTING:
TOP TEN BEST PRACTICES FOR A GREEN DATA CENTER

How to Build and Operate an Energy-Efficient Data Center and Reduce OpEx
Read the White Paper
 * Overview
 * ESG/Sustainability Report
 * EPEAT
 * Resources
 * Memberships & Compliance
 * Featured Products
 * Videos
 * Liquid Cooling
 * Recycling
 * Contact Us



Green Computing at Scale, from Supermicro

Globally, data centers use between two and four Terawatt Hours (TWh) of
electricity per year (about 1 to 3% of global energy use), with an expectation
to grow to between 2% and 8% by 2030. Therefore, reducing energy consumption in
a data center is both good for the environment and good for business. Lowering a
data center's Power Usage Effectiveness (PUE) by reducing the computing
infrastructure's electricity consumption and the facility consumption for
cooling lowers the OPEX and carbon emissions from power generation.

Green computing is about maximizing the performance of a server and a data
center while minimizing the environmental impact. Specific actions and
purchasing decisions can affect power usage at the server level and the
lifecycle of the server, while other actions can reduce the PUE of the data
center.

Supermicro is a leader in designing and delivering the components that make up
Green computing. Supermicro servers are designed to require less power at a
given performance level. This feature is accomplished through a design that
shares components when possible. In addition, Supermicro servers are designed so
that individual subsystems, such as the CPU, Memory, or storage, can be upgraded
without the need to replace the entire chassis. Using this disaggregated design
greatly reduces E-waste and lowers costs when acquiring new technology.

Supermicro products reduce power consumption in the following ways:


DISAGGREGATED SERVER ARCHITECTURE

Reduces E-Waste by allowing for subsystem upgrades as technology improves.
Minimizing entire server refresh can reduce E-waste by up to 90 percent.




SHARING RESOURCES

Reduces power consumption by sharing fans and power supplies, resulting in a
more optimized operation. This can reduce electricity use by an estimated 10%.




SYSTEMS DESIGNED FOR FREE-AIR COOLING AND HIGHER INLET TEMPERATURES

Supermicro servers are designed for maximum airflow, resulting in the CPU's
ability to operate at higher temperatures.




SERVERS READY FOR LIQUID COOLING

A wide range of Supermicro servers are ready to be used with liquid cooling,
which reduces fan speed, and the need for HVAC, thus reducing PUE. The server's
power draw reduction has been shown to be about 10% per server.

ESG/Sustainability Report

Read the Report


INFORMATION FOR SUPERMICRO SERVERS

The International Electrotechnical Commission (IEC) TR 62635 Standard Specifics
Information that Manufacturers and Recyclers can Exchange for Proper End-Of-Life
Treatment

Product Longevity

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   * * Product Recyclability Assessment AS -2025HS-TNR
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   * * Product Recyclability Assessment AS -4125GS-TNRT
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   * * Product Recyclability Assessment ASG-1115S-NE316R
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   * * Product Recyclability Assessment ASG-2015S-E1CR24H
     * Product Disassembly Instruction ASG-2015S-E1CR24H

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 * ASG-2115S-NE332R
   * * Product Recyclability Assessment ASG-2115S-NE332R
     * Product Disassembly Instruction ASG-2115S-NE332R

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 * SSG-121E-NES24R
   * * Product Recyclability Assessment SSG-121E-NES24R
     * Product Disassembly Instruction SSG-121E-NES24R

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 * SYS-121H-TNR
   * * Product Recyclability Assessment SYS-121H-TNR
     * Product Disassembly Instruction SYS-121H-TNR

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 * SYS-211E-FRN2T
   * * Product Recyclability Assessment SYS-211E-FRN2T
     * Product Disassembly Instruction SYS-211E-FRN2T

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 * SYS-211GT-HNC8F
   * * Product Recyclability Assessment SYS-211GT-HNC8F
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 * SYS-211GT-HNC8R
   * * Product Recyclability Assessment SYS-211GT-HNC8R
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 * SYS-211GT-HNTF
   * * Product Recyclability Assessment SYS-211GT-HNTF
     * Product Disassembly Instruction SYS-211GT-HNTF

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 * SYS-211GT-HNTR
   * * Product Recyclability Assessment SYS-211GT-HNTR
     * Product Disassembly Instruction SYS-211GT-HNTR

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 * SYS-221BT-DNC8R
   * * Product Recyclability Assessment SYS-221BT-DNC8R
     * Product Disassembly Instruction SYS-221BT-DNC8R

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 * SYS-221BT-DNTR
   * * Product Recyclability Assessment SYS-221BT-DNTR
     * Product Disassembly Instruction SYS-221BT-DNTR

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 * SYS-221BT-HNC8R
   * * Product Recyclability Assessment SYS-221BT-HNC8R
     * Product Disassembly Instruction SYS-221BT-HNC8R

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 * SYS-221BT-HNC9R
   * * Product Recyclability Assessment SYS-221BT-HNC9R
     * Product Disassembly Instruction SYS-221BT-HNC9R

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 * SYS-221BT-HNR
   * * Product Recyclability Assessment SYS-221BT-HNR
     * Product Disassembly Instruction SYS-221BT-HNR

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 * SYS-221BT-HNTR
   * * Product Recyclability Assessment SYS-221BT-HNTR
     * Product Disassembly Instruction SYS-221BT-HNTR

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 * SYS-221GE-NR
   * * Product Recyclability Assessment SYS-221GE-NR
     * Product Disassembly Instruction SYS-221GE-NR

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 * SYS-221H-TN24R
   * * Product Recyclability Assessment SYS-221H-TN24R
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 * SYS-511E-WR
   * * Product Recyclability Assessment SYS-511E-WR
     * Product Disassembly Instruction SYS-511E-WR

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 * SYS-621BT-DNC8R
   * * Product Recyclability Assessment SYS-621BT-DNC8R
     * Product Disassembly Instruction SYS-621BT-DNC8R

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 * SYS-621BT-DNTR
   * * Product Recyclability Assessment SYS-621BT-DNTR
     * Product Disassembly Instruction SYS-621BT-DNTR

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 * SYS-621BT-HNC8R
   * * Product Recyclability Assessment SYS-621BT-HNC8R
     * Product Disassembly Instruction SYS-621BT-HNC8R

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 * SYS-621BT-HNTR
   * * Product Recyclability Assessment SYS-621BT-HNTR
     * Product Disassembly Instruction SYS-621BT-HNTR

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 * SYS-621H-TN12R
   * * Product Recyclability Assessment SYS-621H-TN12R
     * Product Disassembly Instruction SYS-621H-TN12R

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 * AS -1115HS-TNR
   * * Product Recyclability Assessment AS -1115HS-TNR
     * Product Disassembly Instruction AS -1115HS-TNR

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 * AS -1125HS-TNR
   * * Product Recyclability Assessment AS -1125HS-TNR
     * Product Disassembly Instruction AS -1125HS-TNR

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 * AS -2015HS-TNR
   * * Product Recyclability Assessment AS -2015HS-TNR
     * Product Disassembly Instruction AS -2015HS-TNR

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 * AS -2025HS-TNR
   * * Product Recyclability Assessment AS -2025HS-TNR
     * Product Disassembly Instruction AS -2025HS-TNR

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 * AS -2115GT-HNTF
   * * Product Recyclability Assessment AS -2115GT-HNTF
     * Product Disassembly Instruction AS -2115GT-HNTF

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RESOURCES


GREEN COMPUTING: TOP TEN BEST PRACTICES FOR A GREEN DATA CENTER

HOW TO BUILD AND OPERATE AN ENERGY-EFFICIENT DATA CENTER AND REDUCE OPEX

Data Centers use a tremendous amount of electricity, contributing to global
warming. However, there are a number of actions that data center operators can
take to reduce their carbon footprint. From choosing the location of a data
center down to the choice of components, these Top 10 Best Practices will result
in lower power usage. Read this report to learn some simple steps that can be
taken.

Read the White Paper


SUPERMICRO PRODUCTS REDUCE ENVIRONMENTAL IMPACT

INNOVATIVE SERVER DESIGNS LOWER POWER USAGE AND REDUCE E-WASTE

Climate change is affecting billions of people, and the contribution to this
phenomenon by greenhouse gasses is well understood. Using finite resources (oil,
natural gas, and coal) for electricity generation produces CO2, which traps heat
in the earth's atmosphere. Data centers, comprising thousands of servers, are
huge electricity consumers. According to a Forbes report, data centers use about
1% of all electricity.

Read the White Paper


RESOURCE-SAVING ARCHITECTURE @ FORTUNE 100 DATACENTER

SUPERMICRO MICROBLADE POWERS ONE OF THE WORLD'S MOST ENERGY EFFICIENT DATA
CENTERS WITH A PUE OF 1.06

Taking the We Keep IT Green® mission to the next level, Supermicro’s
disaggregated Resource-Saving systems are already deployed in volume at multiple
Fortune 100 datacenters.

A Fortune 100 Company has deployed over 50,000 MicroBlade™ disaggregated Intel®
Xeon® processor based servers at its Silicon Valley data center, one of the
world’s most energy efficient data centers.

Read the Success Story


ACHIEVING EXCEPTIONAL TCO SAVINGS WITH 8U SUPERBLADE®

REDUCE OPERATING COSTS WITH SUPERMICRO SERVERS

Supermicro high performance, density optimized and energy efficiency blade
server solutions can significantly reduce initial capital and operational
expenses for many organizations. In particular, Supermicro's new generation
SuperBlade® product portfolio has been designed to optimize key components of
TCO for today's datacenters, such as free-air cooling, power efficiency, node
density and networking management.

Read the White Paper



MEMBERSHIPS & COMPLIANCE


LIQUID COOLING COALITION (LCC)

The Liquid Cooling Coalition (LCC) is a new industry forum dedicated to
advancing the adoption of liquid cooling to enable a sustainable future for data
centers. Membership consists of industrial coolant producers, original equipment
manufacturers, original device manufacturers, operators of High-Performance
Computing applications (e.g., large language models, machine learning, etc.),
and data center providers.

Learn More


LOT 9 COMPLIANCE

Lot 9 regulations are a new set of product standards that deal with data storage
devices such as enterprise-level servers. Learn how Supermicro meets European
Union (EU) Eco-design requirements for servers and storage products as part of
Lot 9 Compliance.

View Details



FEATURED PRODUCTS

The Resource-Saving Architecture operates in a large-scale datacenter
environment leveraging Supermicro Rack Scale Design (RSD) to manage racks of
disaggregated servers, pooled composable storage, and networking with
industry-standard Redfish management. When view over a three- to-five-year
refresh cycle, disaggregated rack scale design will deliver on-average a higher
performance and more efficient servers at lower costs than a traditional
rip-and-replace model by allowing data centers to independently optimize
adoption of new and improved technologies.


1U 32-BAY E1.L EDSFF SUPERSTORAGE


Learn more


6U SUPERBLADE®


Learn more


2U 4-NODE BIGTWIN®


Learn more



VIDEOS

Green Computing at Scale

Supermicro continues to lead the market in Green IT innovation. Our
Resource-Saving Architecture is designed to reduce the impact of technology on
our planet, with modular designs that reduce both TCO and TCE (Total Cost to the
Environment).

Watch the Webinar

Technology & Our Planet

Supermicro continues to lead the market in Green IT innovation. Our
Resource-Saving Architecture is designed to reduce the impact of technology on
our planet, with modular designs that reduce both TCO and TCE (Total Cost to the
Environment).

Play the video

Mission: Green Computing (2018)

IT Industry’s responsibility towards a Greener Earth

Play the video

Global Climate Action Summit (GCAS) – Step Up Tech Declaration

Supermicro has announced at the Global Climate Action Summit (GCAS) – Step Up
Tech Declaration, a metric for “Total Cost to the Environment,” for IT leaders
to measure their data centers’ environmental impact by urging them to
incorporate Resource-Saving technologies into their plans to help the data
centers reach an average PUE of 1.30 and reduce their E-waste by 2025.

Play the video

Supermicro Rack Scale Design 2.1

The latest Supermicro Rack Scale Design total solution is the high performance,
high density, and disaggregated NVMe storage. The arrival of this innovative
technology marks the beginning of a paradigm shift to deploy truly disaggregated
resource pools in today’s large scale data centers that will dramatically
improve data center efficiency, increase utilization and reduce costs.

Play the video



SUPERMICRO LIQUID COOLING SOLUTIONS

Superior Effectiveness of Liquid Cooling with Proven Deployments at Scale

Learn More
Contact Supermicro to Learn More about Green Computing
Contact Us

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or its subsidiaries in the U.S. and/or other countries.


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